Salicylic and succinic acids as inducers of phytoimmunity in winter wheat for the management of powdery mildew (Blumeria graminis (DC) Speer f. sp. tritici).
- 1. Department of Symbiotic Nitrogen Fixation, Institute of Plant Physiology and Genetics of the National Academy of Sciences of Ukraine, Vasylkivska 31/17, Kyiv, 03022, Ukraine. tp_nyzhnyk@ukr.net.
- 2. National Academy of Sciences of Ukraine
- 3. European Regional Centre for Ecohydrology of the Polish Academy of Sciences, Tylna 3, Lodz, 90-364, Poland. tp_nyzhnyk@ukr.net.
- 4. Polish Academy of Sciences
- 5. Faculty of Biology and Environmental Protection, Department of Biogeography, Paleoecology and Nature Conservation, University of Lodz, Banacha 1/3, Lodz, 90-237, Poland. marcin.kiedrzynski@biol.uni.lodz.pl.
- 6. European Regional Centre for Ecohydrology of the Polish Academy of Sciences, Tylna 3, Lodz, 90-364, Poland.
- 7. Faculty of Biology and Environmental Protection, UNESCO Chair on Ecohydrology and Applied Ecology, University of Lodz, Banacha 12/16, Lodz, 90-237, Poland.
- 8. Department of Symbiotic Nitrogen Fixation, Institute of Plant Physiology and Genetics of the National Academy of Sciences of Ukraine, Vasylkivska 31/17, Kyiv, 03022, Ukraine.
Description
Growth regulators play an important role in activating the main signal transduction pathways in response to stress, and their activity is key in the general mechanism to understanding the formation of phytoimmunity under biotic stress. The study investigates the specificity of stress-protective reactions in winter wheat varieties with varying degrees of sensitivity to the phytopathogen Blumeria graminis (DC) Speer f. sp. tritici, and determined the effectiveness of exogenous salicylic and succinic acids as inducers of resistance to powdery mildew.
Exogenous application of 0.1 mM salicylic acid induced stress-protective reactions in the resistant wheat, characterised by increased ethylene release, and phenylalanine amino-lyase and ascorbate peroxidase activity in the flag leaves. These steps help optimize its physiological state and productivity by preserving the integrity of cell membranes and its chlorophyll content. Exogenous succinic acid at a concentration of 0.1 mM also led to the activation of protective antioxidant systems, which did not have a positive effect on plant physiology or productivity during infection. The susceptible variety of winter wheat was unable to mobilize the necessary stress-protective systems, regardless of salicylic or succinic acid treatment, resulting in the spread of infection and reduced productivity.
The resistance of winter wheat to phytopathogen damage (Blumeria graminis (DC) Speer f. sp. tritici) is determined by the capacity of the plant to mobilize stress-protective reactions and optimize its metabolism. Salicylic acid (0.1 mM) effectively enhances plant defence systems, thus improving plant physiology and productivity during the spread of powdery mildew.
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Publication Details
Journal article
Journal:
BMC plant biology
Publisher:
Springer Science and Business Media LLC
ISSN:
14712229
Volume:
25
Pages:
376
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References
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